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Performance Improvement of Automotive Acoustic Signal Devices using Electric PWM Control

机译:电动PWM控制的汽车声学信号装置的性能改进

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A vehicle horn is a sound-making device used to warn others of any approaching vehicle or of its presence. Some countries require horns by law. Conventional Horns are electromechanical with steel diaphragm and electromagnet acting upon it. Switching of horn is performed by mechanical contact breaker assembly that repeatedly interrupts the current to electromagnetic. Up-Down movement of diaphragm with response to the current creates a sound wave across horn. Conventional Horn faces the problem of wear and tear of mechanical contact and internal parts. Switching of contacts results in arcing. There is no current and surge voltage protection for the coil of conventional horn. These problems of conventional system might be accepted in the general market, but in specific markets which are using horn frequently; these have to be considered as serious issues. Especially, horns are one of the most abusive parts of vehicle in India. They are used very frequently due to the congested traffic conditions. It means that Indian market requires more reliable and robust horn than present horn system. This paper will simply show why conventional horn can't meet present requirements and new solution is necessary. Then, an electronic approach to drive the horn, electric horn has been described in the paper. This paper will show how to improve endurance cycle by using a microcontroller and semiconductor based switching. Lastly, this paper will describe the test results and performance data of electronic horn that show an increase of horn life and meet the requirements for India market.
机译:车喇叭是一种用于警告其他任何接近的车辆或其存在的声音设备。一些国家要求依法。传统的喇叭是用钢膜片和电磁铁作用的机电。喇叭切换是通过机械接触断路器组件进行的,该机械接触断路器组件重复地中断电流以电磁。隔膜的上下运动,响应电流的响应产生横跨喇叭的声波。传统的喇叭面向机械接触和内部部件的磨损和撕裂问题。切换联系人导致电弧。传统喇叭线圈没有电流和浪涌电压保护。常规系统中的这些问题可能在一般市场中接受,但在使用喇叭的特定市场中经常使用;这些必须被视为严重的问题。特别是,角是印度车辆中最具虐待的车辆之一。由于拥挤的交通状况,它们非常经常使用。这意味着印度市场需要比现在的喇叭系统更可靠和更坚固的角。本文将简单地显示为什么常规喇叭不能满足现在的要求,并且需要新的解决方案。然后,在纸上描述了一种驱动喇叭的电子方法,已经在纸上描述了电喇叭。本文将展示如何通过使用微控制器和基于半导体的切换来改善耐久性周期。最后,本文将描述电子喇叭的测试结果和性能数据,其显示喇叭寿命的增加,并满足印度市场的要求。

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